Startle Response System

The startle response system is a rapid defensive neural circuit that converts sudden, intense sensory stimuli into coordinated protective movements, making it a useful model for studying brain function and behavior. Auditory or other abrupt signals activate sensory pathways that relay through the brainstem, particularly the nucleus reticularis pontis caudalis, which rapidly recruits spinal motor neurons and skeletal muscles. The response can be modified by habituation, sensitization, and prepulse inhibition, in which a preceding weak stimulus suppresses the reaction. Neuroscientists use startle measurements to investigate sensorimotor gating, threat processing, learning, and neurological or psychiatric disorders.

Startle Response System - Related Videos

Research

JoVE Journal - Neuroscience
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Habituation and Prepulse Inhibition of Acoustic Startle in Rodents

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Cited by 164 •

2011

Habituation and prepulse inhibition of startle are operational measures of sensory gating. Sensory gating is disrupted in schizophrenia, and some other mental disorders and neurodegenerative diseases. We here describe a standard protocol to assess short-term and long-term habituation as well as prepulse inhibition of acoustic startle responses in rats and mice.

Research

JoVE Journal - Biology
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Evaluating Toxicity of Chemicals using a Zebrafish Vibration Startle Response Screening System

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Cited by 6 •

2024

We describe a screening system's workflow and data analysis for evaluating chemical compound toxicity based on the zebrafish embryo vibration startle response. The system records the movements of zebrafish embryos upon exposure to a vibration stimulus and allows for an integrated evaluation of general toxicity/lethality and neuromuscular toxicity.

Research

JoVE Journal - Neuroscience

Methods to Characterize Spontaneous and Startle-induced Locomotion in a Rotenone-induced Parkinson's Disease Model of Drosophila

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Cited by 10 •

2014

Parkinson’s disease is a neurodegenerative disorder that results from the degeneration of dopaminergic neurons in the central nervous system, causing locomotion defects. Rotenone models Parkinson’s disease in Drosophila. This paper outlines two assays that characterize both spontaneous and startle-induced locomotion deficiencies caused by rotenone.

Simple Surgical Induction of Conductive Hearing Loss with Verification Using Otoscope Visualization and Behavioral Clap Startle Response in Rat

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Cited by 2 •

2019

Here, we present a protocol to establish a replicable conductive hearing loss induction via surgical tympanic membrane puncture and verification by otoscope visualization and behavioral assessment by clap startle.

A Multiplex Serological Assay for the Detection of Antibody Responses to Arboviruses

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2025

Multiplex fluorescence immunoassays are becoming a reference for serology testing. Their application, however, is limited by the complexity and time-consuming bead-analyte coupling processes. This report presents a semi-automated, reproducible multiplex microsphere bead coupling protocol that is comparable to the standard method while considerably reducing time to results.

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